Oxidatively Induced Reactivity of [Fe 2 (CO) 4 (κ 2 -dppe)(μ-pdt)]: an Electrochemical and Theoretical Study of the Structure Change and Ligand Binding Processes

  • Chouffai, Dounia
  • Zampella, Giuseppe
  • Capon, Jean-François
  • de Gioia, Luca
  • Gloaguen, Frederic
  • Pétillon, François Y.
  • Schollhammer, Philippe, P.
  • Talarmin, Jean
Publication date
December 2011
Publisher
American Chemical Society
ISSN
0020-1669
Citation count (estimate)
16

Abstract

International audienceThe one-electron oxidation of the diiron complex [Fe2(CO)4(κ2-dppe)(μ-pdt)] (1) (dppe = Ph2PCH2CH2PPh2; pdt = S(CH2)3S) has been investigated in the absence and in the presence of P(OMe)3, by both electrochemical and theoretical methods, to shed light on the mechanism and the location of the oxidatively induced structure change. While cyclic voltammetric experiments did not allow to discriminate between a two-step (EC) and a concerted, quasi-reversible (QR) process, density functional theory (DFT) calculations favor the first option. When P(OMe)3 is present, the one-electron oxidation produces singly and doubly substituted cations, [Fe2(CO)4–n{P(OMe)3}n(κ2-dppe)(μ-pdt)]+ (n = 1: 2+; n = 2: 3+) following mechanisms that...

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